Department of Human Genetics, Radboud University Medical Center, Donders Institute for Brain, Cognition, and Behavior, Nijmegen, the Netherlands.
Department of Epileptology, Academic Centre for Epileptology (ACE) Kempenhaeghe, Heeze, the Netherlands.
Epilepsia. 2023 Aug;64(8):1975-1990. doi: 10.1111/epi.17651. Epub 2023 Jun 4.
Epilepsy is one of the most common neurological disorders. Although many factors contribute to epileptogenesis, seizure generation is mostly linked to hyperexcitability due to alterations in excitatory/inhibitory (E/I) balance. The common hypothesis is that reduced inhibition, increased excitation, or both contribute to the etiology of epilepsy. Increasing evidence shows that this view is oversimplistic, and that increased inhibition through depolarizing γ-aminobutyric acid (GABA) similarly contributes to epileptogenisis. In early development, GABA signaling is depolarizing, inducing outward Cl currents due to high intracellular Cl concentrations. During maturation, the mechanisms of GABA action shift from depolarizing to hyperpolarizing, a critical event during brain development. Altered timing of this shift is associated with both neurodevelopmental disorders and epilepsy. Here, we consider the different ways that depolarizing GABA contributes to altered E/I balance and epileptogenesis, and discuss that alterations in depolarizing GABA could be a common denominator underlying seizure generation in neurodevelopmental disorders and epilepsies.
癫痫是最常见的神经障碍之一。尽管许多因素导致癫痫发生,但由于兴奋性/抑制性(E/I)平衡的改变,癫痫发作的产生主要与过度兴奋有关。常见的假设是抑制减少、兴奋增加或两者都有助于癫痫的发病机制。越来越多的证据表明,这种观点过于简单化,通过去极化γ-氨基丁酸(GABA)增加抑制同样有助于癫痫的发生。在早期发育中,GABA 信号是去极化的,由于细胞内 Cl 浓度高,诱导外向 Cl 电流。在成熟过程中,GABA 作用的机制从去极化转变为超极化,这是大脑发育过程中的一个关键事件。这种转变时间的改变与神经发育障碍和癫痫有关。在这里,我们考虑了去极化 GABA 对 E/I 平衡和癫痫发生的改变的不同方式,并讨论了去极化 GABA 的改变可能是神经发育障碍和癫痫发作的共同基础。